首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Acid-catalyzed conversion of mono- and poly-sugars into platform chemicals: Effects of molecular structure of sugar substrate
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Acid-catalyzed conversion of mono- and poly-sugars into platform chemicals: Effects of molecular structure of sugar substrate

机译:酸催化在平台化学品中的单糖和多糖转化:糖基质的分子结构的影响

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摘要

Hydrolysis/pyrolysis of lignocellulosic biomass always produces a mixture of sugars with distinct structures as intermediates or products. This study tried to elucidate the effects of molecular structure of sugars on their acid-catalyzed conversions in ethanol/water. Location of carbonyl group in sugars (fructose versus glucose) and steric configuration of hydroxyl groups (glucose versus galactose) significantly affected yields of levulinic acid/ester (fructose > glucose > galactose). The dehydration of fructose to 5-(hydroxymethyl)furfural produces much less soluble polymer than that from glucose and galactose, which results in high yields of levulinic acid/ester from fructose. Anhydrate sugar such as levoglucosan tends to undergo the undesirable decomposition to form less levulinic acid/ester. Catalytic behaviors of the poly-sugars (sucrose, maltose, raffinose, β-cyclodextrins) were determined much by their basic units. However, their big molecular sizes create the steric hindrance that significantly affects their followed conversion over solid acid catalyst.
机译:木质纤维素生物质的水解/热解总是产生糖的混合物,具有不同结构作为中间体或产物。该研究试图阐明糖的分子结构对乙醇/水中酸催化转化的影响。糖中的含糖(果糖与葡萄糖)和羟基的空间构型(葡萄糖与半乳糖)的位置显着影响乙酰丙酸/酯的产量(果糖>葡萄糖>半乳糖)。果糖至5-(羟甲基)糠醛的脱水产生比葡萄糖和半乳糖的可溶性聚合物更少,这导致来自果糖的高产率高的乙酰酸/酯。诸如左葡聚糖的无水糖易于经历不希望的分解以形成较少的乙酰丙酸/酯。聚糖(蔗糖,麦芽糖,棉糖糖,β-环糊精)的催化性能很大,其基本单位确定。然而,它们的大分子尺寸会产生超空间障碍,从而显着影响其在固体酸催化剂上的后续转化。

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